메뉴 건너뛰기




Volumn 64, Issue 1, 2014, Pages 223-235

Impact comminution of solids due to local kinetic energy of high shear strain rate: I. Continuum theory and turbulence analogy

Author keywords

Dynamic fracture; Effective viscosity; Fracture mechanics; Fragmentation; Penetration

Indexed keywords

DYNAMIC FRACTURES; EFFECTIVE VISCOSITY; ENERGY DISSIPATION RATE; EXPERIMENTAL JUSTIFICATION; FRAGMENTATION; INTERFACE FRACTURE ENERGY; MATERIAL CONSTITUTIVE MODELS; PENETRATION;

EID: 84893733656     PISSN: 00225096     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.jmps.2013.11.008     Document Type: Article
Times cited : (47)

References (42)
  • 1
    • 84859242998 scopus 로고    scopus 로고
    • The high-rate brittle microplane concrete model part I: Bounding curves and quasi-static fit to material property data
    • M.D. Adley, A.O. Frank, and K.T. Danielson The high-rate brittle microplane concrete model part I: bounding curves and quasi-static fit to material property data Comput. Concr. 9 2012 293 310
    • (2012) Comput. Concr. , vol.9 , pp. 293-310
    • Adley, M.D.1    Frank, A.O.2    Danielson, K.T.3
  • 2
    • 84888390825 scopus 로고    scopus 로고
    • Comminution of solids caused by kinetic energy of high shear strain rate, with implications for impact, shock, and shale fracturing
    • Z.P. Bažant, and F.C. Caner Comminution of solids caused by kinetic energy of high shear strain rate, with implications for impact, shock, and shale fracturing Proc. Natl. Acad. Sci. 110 48 2013 19291 19294
    • (2013) Proc. Natl. Acad. Sci. , vol.110 , Issue.48 , pp. 19291-19294
    • Bažant, Z.P.1    Caner, F.C.2
  • 3
    • 0034283406 scopus 로고    scopus 로고
    • Fracturing rate effect and creep in microplane model for dynamics
    • Z.P. Bažant, F.C. Caner, M.D. Adley, and A.S. A Fracturing rate effect and creep in microplane model for dynamics ASCE J. Eng. Mech. 126 2000 962 970
    • (2000) ASCE J. Eng. Mech. , vol.126 , pp. 962-970
    • Bažant, Z.P.1    Caner, F.C.2    Adley, M.D.3
  • 4
    • 52649159237 scopus 로고    scopus 로고
    • What did and did not cause collapse of World Trade Center twin towers in New York?
    • Z.P. Bažant, J.L. Le, F.R. Greening, and D.B. Benson What did and did not cause collapse of World Trade Center twin towers in New York? ASCE J. Eng. Mech. 134 2008 892 906
    • (2008) ASCE J. Eng. Mech. , vol.134 , pp. 892-906
    • Bažant, Z.P.1    Le, J.L.2    Greening, F.R.3    Benson, D.B.4
  • 5
    • 0001592920 scopus 로고
    • Nonlocal smeared cracking model for concrete fracture
    • Z.P. Bažant, and F.B. Lin Nonlocal smeared cracking model for concrete fracture ASCE J. Struct. Eng. 114 1988 2493 2510
    • (1988) ASCE J. Struct. Eng. , vol.114 , pp. 2493-2510
    • Bažant, Z.P.1    Lin, F.B.2
  • 7
    • 0030212427 scopus 로고    scopus 로고
    • Computational modelling of impact damage in brittle materials
    • PII S0020768395002553
    • G.T. Camacho, and M. Ortiz Computational modelling of impact damage in brittle materials Int. J. Solids Struct. 33 1996 2899 2938 (Pubitemid 126377006)
    • (1996) International Journal of Solids and Structures , vol.33 , Issue.20-22 , pp. 2899-2938
    • Camacho, G.T.1    Ortiz, M.2
  • 8
    • 84893718223 scopus 로고    scopus 로고
    • Impact comminution of solids due to local kinetic energy of high shear strain rate: II. Microplane model and verification
    • this issue
    • Caner, F.C., Bažant, Z.P. Impact comminution of solids due to local kinetic energy of high shear strain rate: II. Microplane model and verification. J. Mech. Phys. Solids, http://dx.doi.org/10.1016/j.jmps.2013.11. 009, this issue.
    • J. Mech. Phys. Solids
    • Caner, F.C.1    Bažant, Z.P.2
  • 9
    • 84888068077 scopus 로고    scopus 로고
    • Microplane model M7 for plain concrete: I. Formulation
    • F.C. Caner, and Z.P. Bažant Microplane model M7 for plain concrete: I. Formulation ASCE J. Eng. Mech. 139 2013 1714 1723
    • (2013) ASCE J. Eng. Mech. , vol.139 , pp. 1714-1723
    • Caner, F.C.1    Bažant, Z.P.2
  • 10
    • 84877063272 scopus 로고    scopus 로고
    • Microplane model M7f for fiber reinforced concrete
    • F.C. Caner, Z.P. Bažant, and R. Wendner Microplane model M7f for fiber reinforced concrete Eng. Fract. Mech. 105 2013 41 57
    • (2013) Eng. Fract. Mech. , vol.105 , pp. 41-57
    • Caner, F.C.1    Bažant, Z.P.2    Wendner, R.3
  • 11
    • 0001867699 scopus 로고
    • Energy-size reduction relationships in comminution
    • R.J. Charles Energy-size reduction relationships in comminution Min. Eng. 9 1957 80 88
    • (1957) Min. Eng. , vol.9 , pp. 80-88
    • Charles, R.J.1
  • 13
    • 55349095762 scopus 로고    scopus 로고
    • Inelastic deformation and energy dissipation in ceramics a mechanism-based constitutive model
    • V.S. Deshpande, and A.G. Evans Inelastic deformation and energy dissipation in ceramics a mechanism-based constitutive model J. Mech. Phys. Solids 56 2008 3077 3100
    • (2008) J. Mech. Phys. Solids , vol.56 , pp. 3077-3100
    • Deshpande, V.S.1    Evans, A.G.2
  • 14
    • 0037187283 scopus 로고    scopus 로고
    • A theory of the densification-induced fragmentation in glasses and ceramics under dynamic compression
    • DOI 10.1016/S0020-7683(01)00278-5, PII S0020768301002785
    • M. Doyoyo A theory of the densification-induced fragmentation in glasses and ceramics under dynamic compression Int. J. Solids Struct. 39 2002 1833 1843 (Pubitemid 34554008)
    • (2002) International Journal of Solids and Structures , vol.39 , Issue.7 , pp. 1833-1843
    • Doyoyo, M.1
  • 15
    • 78649981820 scopus 로고    scopus 로고
    • The dynamic strength of a representative double layer prismatic core a combined experimental, numerical, and analytical assessment
    • 061011-1-061011-7
    • E. Ferri, V. Deshpande, and A. Evans The dynamic strength of a representative double layer prismatic core a combined experimental, numerical, and analytical assessment ASME J. Appl. Mech. 77 2010 061011-1-061011-7
    • (2010) ASME J. Appl. Mech. , vol.77
    • Ferri, E.1    Deshpande, V.2    Evans, A.3
  • 16
    • 38949209089 scopus 로고    scopus 로고
    • A testing technique for concrete under confinement at high rates of strain
    • DOI 10.1016/j.ijimpeng.2007.04.007, PII S0734743X0700067X
    • P. Forquin, G. Gary, and F. Gatuingt A testing technique for concrete under confinement at high rates of strain Int. J. Impact Eng. 35 2008 425 446 (Pubitemid 351215756)
    • (2008) International Journal of Impact Engineering , vol.35 , Issue.6 , pp. 425-446
    • Forquin, P.1    Gary, G.2    Gatuingt, F.3
  • 17
    • 84859245491 scopus 로고    scopus 로고
    • The high-rate brittle microplane concrete model part II: Application to projectile perforation of concrete
    • A.O. Frank, M.D. Adley, K.T. Danielson, and H.S. McDevitt The high-rate brittle microplane concrete model part II: application to projectile perforation of concrete Comput. Concr. 9 2012 311 325
    • (2012) Comput. Concr. , vol.9 , pp. 311-325
    • Frank, A.O.1    Adley, M.D.2    Danielson, K.T.3    McDevitt, H.S.4
  • 19
    • 0037198579 scopus 로고    scopus 로고
    • Modelling of failure mode transition in ballistic penetration with a continuum model describing microcracking and flow of pulverized media
    • DOI 10.1002/nme.427
    • B. Gailly, and H. Espinosa Modelling of failure mode transition in ballistic penetration with a continuum model describing microcracking and flow of pulverized media Int. J. Numer. Methods Eng. 54 2002 365 398 (Pubitemid 34490082)
    • (2002) International Journal for Numerical Methods in Engineering , vol.54 , Issue.3 , pp. 365-398
    • Gailly, B.A.1    Espinosa, H.D.2
  • 20
    • 0031994219 scopus 로고    scopus 로고
    • Numerical simulation of crack growth in an isotropic solid with randomized internal cohesive bonds
    • PII S0022509697000471
    • H. Gao, and P. Klein Numerical simulation of crack growth in an isotropic solid with randomized internal cohesive bonds J. Mech. Phys. Solids 46 1998 187 218 (Pubitemid 128393866)
    • (1998) Journal of the Mechanics and Physics of Solids , vol.46 , Issue.2 , pp. 187-218
    • Gao, H.1    Klein, P.2
  • 22
    • 0019912484 scopus 로고
    • Local inertial effects in dynamic fragmentation
    • DOI 10.1063/1.329934
    • D.E. Grady Local inertial effects in dynamic fragmentation J. Appl. Phys. 53 1982 322 325 (Pubitemid 12467609)
    • (1982) Journal of Applied Physics , vol.53 , Issue.1 , pp. 322-325
    • Grady, D.E.1
  • 23
    • 0022233447 scopus 로고
    • The mechanics of fracture under high-rate stress loading
    • Z.P. Bažant, John Wiley Chichester, UK (Chapter 7)
    • D.E. Grady The mechanics of fracture under high-rate stress loading Z.P. Bažant, Mechanics of Geomaterials 1985 John Wiley Chichester, UK 129 156 (Chapter 7)
    • (1985) Mechanics of Geomaterials , pp. 129-156
    • Grady, D.E.1
  • 24
    • 0001551362 scopus 로고
    • Particle size statistics in dynamic fragmentation
    • D.E. Grady Particle size statistics in dynamic fragmentation J. Appl. Phys. 68 1990 6099 6105
    • (1990) J. Appl. Phys. , vol.68 , pp. 6099-6105
    • Grady, D.E.1
  • 25
    • 0032142506 scopus 로고    scopus 로고
    • Shock-wave compression of brittle solids
    • PII S0167663698000155
    • D.E. Grady Shock-wave compression of brittle solids Mech. Mater. 29 1998 181 203 (Pubitemid 128412406)
    • (1998) Mechanics of Materials , vol.29 , Issue.3-4 , pp. 181-203
    • Grady, D.E.1
  • 26
    • 77953811835 scopus 로고    scopus 로고
    • Length scales and size distributions in dynamic fragmentation
    • D.E. Grady Length scales and size distributions in dynamic fragmentation Int. J. Fract. 163 2010 85 99
    • (2010) Int. J. Fract. , vol.163 , pp. 85-99
    • Grady, D.E.1
  • 27
    • 0029379149 scopus 로고
    • Experimental measurement of dynamic failure and fragmentation properties of metals
    • D.E. Grady, and M.E. Kipp Experimental measurement of dynamic failure and fragmentation properties of metals Int. J. Solids Struct. 32 1995 2779 2991
    • (1995) Int. J. Solids Struct. , vol.32 , pp. 2779-2991
    • Grady, D.E.1    Kipp, M.E.2
  • 28
    • 0018530656 scopus 로고
    • The micromechanics of impact fracture of rock
    • T.E. Grady, and M.E. Kipp The micromechanics of impact fracture of rock Int. J. Rock Mech. Min. Sci. 16 1979 293 302
    • (1979) Int. J. Rock Mech. Min. Sci. , vol.16 , pp. 293-302
    • Grady, T.E.1    Kipp, M.E.2
  • 29
    • 0029416136 scopus 로고
    • Particle model for quasibrittle fracture and application to sea ice
    • M. Jirásek, and Z.P. Bažant Particle model for quasibrittle fracture and application to sea ice ASCE J. Eng. Mech. 121 1995 1016 1025 (Pubitemid 26463335)
    • (1995) Journal of Engineering Mechanics - ASCE , vol.121 , Issue.9 , pp. 1016-1025
    • Jirasek, M.1    Bazant, Z.P.2
  • 30
    • 0019068270 scopus 로고
    • Strain-rate dependent fracture initiation
    • M.E. Kipp, D.E. Grady, and E.P. Chen Strain-rate dependent fracture initiation Int. J. Fract. 16 1980 471 478
    • (1980) Int. J. Fract. , vol.16 , pp. 471-478
    • Kipp, M.E.1    Grady, D.E.2    Chen, E.P.3
  • 31
    • 0032148207 scopus 로고    scopus 로고
    • Crack nucleation and growth as strain localization in a virtual-bond continuum
    • DOI 10.1016/S0013-7944(98)00048-4, PII S0013794498000484
    • P. Klein, and H. Gao Crack nucleation and growth as strain localization in a virtual-bond continuum Eng. Fract. Mech. 61 1998 21 48 (Pubitemid 29111647)
    • (1998) Engineering Fracture Mechanics , vol.61 , Issue.1 , pp. 21-48
    • Klein, P.1    Gao, H.2
  • 32
    • 77955193887 scopus 로고    scopus 로고
    • Some aspects of load-rate sensitivity in visco-elastic microplane material model
    • I. Kožar, and J. Ožbolt Some aspects of load-rate sensitivity in visco-elastic microplane material model Comput. Struct. 7 2010 317 329
    • (2010) Comput. Struct. , vol.7 , pp. 317-329
    • Kožar, I.1    Ožbolt, J.2
  • 34
    • 84933322790 scopus 로고
    • Fragmentation of shell cases
    • N.F. Mott Fragmentation of shell cases Proc. Roy. Soc. A 189 1947 300 308
    • (1947) Proc. Roy. Soc. A , vol.189 , pp. 300-308
    • Mott, N.F.1
  • 35
    • 21644466865 scopus 로고    scopus 로고
    • The Swebrec function linking fragmentation by blasting and crushing
    • F. Ouchterlony The Swebrec function linking fragmentation by blasting and crushing Min. Technol. 114 2005 A29 A44
    • (2005) Min. Technol. , vol.114
    • Ouchterlony, F.1
  • 36
    • 79952992202 scopus 로고    scopus 로고
    • Dynamic fracture of concrete - Compact tension specimen
    • J. Ožbolt, A. Sharma, and H.W. Reinhardt Dynamic fracture of concrete - compact tension specimen Int. J. Solids Struct. 48 2011 1534 1543
    • (2011) Int. J. Solids Struct. , vol.48 , pp. 1534-1543
    • Ožbolt, J.1    Sharma, A.2    Reinhardt, H.W.3
  • 37
    • 0026221410 scopus 로고
    • Tensile fracture of concrete at high loading rates taking account of inertia and crack velocity effects
    • H.W. Reinhardt, and J. Weerheijm Tensile fracture of concrete at high loading rates taking account of inertia and crack velocity effects Int. J. Fract. 51 1991 31 42 (Pubitemid 21720645)
    • (1991) International Journal of Fracture , vol.51 , Issue.1 , pp. 31-42
    • Reinhardt, H.W.1    Weerheijm, J.2
  • 39
    • 0000296945 scopus 로고    scopus 로고
    • High-strain-rate deformation and comminution of silicon carbide
    • C.J. Shih, V.F. Nesterenko, and M.A. Meyers High-strain-rate deformation and comminution of silicon carbide J. Appl. Phys. 83 1998 4660 4671 (Pubitemid 128594001)
    • (1998) Journal of Applied Physics , vol.83 , Issue.9 , pp. 4660-4671
    • Shih, C.J.1    Nesterenko, V.F.2    Meyers, M.A.3
  • 41
    • 0014905699 scopus 로고
    • The interaction of particle and material behavior in erosion processes
    • G.P. Tilly, and W. Sage The interaction of particle and material behavior in erosion processes Wear 16 1970 447 465
    • (1970) Wear , vol.16 , pp. 447-465
    • Tilly, G.P.1    Sage, W.2
  • 42
    • 77955247967 scopus 로고    scopus 로고
    • The influence of material properties and confinement on the dynamic penetration of alumina by hard spheres
    • 051305-1-051305-8
    • Z. Wei, A.G. Evans, and V.S. Deshpande The influence of material properties and confinement on the dynamic penetration of alumina by hard spheres ASME J. Appl. Mech. 76 2009 051305-1-051305-8
    • (2009) ASME J. Appl. Mech. , vol.76
    • Wei, Z.1    Evans, A.G.2    Deshpande, V.S.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.